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Updated: Apr 22, 2026

Identifying Coronary Artery Calcification on Non-gated Computed Tomography Scans
Published on: August 28, 2018
Calcifications of the thoracic aorta on extended non-contrast-enhanced cardiac CT
Damian Craiem1, Gilles Chironi2, Mariano E Casciaro3
1Favaloro University. Facultad de Ingeniería, Ciencias Exactas y Naturales, CONICET, Buenos Aires, Argentina; APHP, Hôpital Européen Georges Pompidou, INSERM U970, Université Paris-Descartes, Paris, France.
Insights
Thoracic aorta calcium (TAC) screening using extended computed tomography (CT) scans reveals significant calcifications in the aortic arch. This extended evaluation doubles TAC prevalence, identifying patients missed by standard scans.
Area of Science:
- Cardiovascular Imaging
- Radiology
- Atherosclerosis Research
Background:
- Calcified atherosclerosis in any vascular bed is linked to increased mortality risk.
- Computed tomography (CT) scans for coronary artery calcium (CAC) assessment can also evaluate thoracic aorta calcium (TAC).
- Standard TAC analysis excludes the aortic arch, limiting its predictive performance.
Purpose of the Study:
- To investigate the prevalence and spatial distribution of TAC throughout the entire thoracic aorta, including previously excluded segments.
- To assess the impact of including the aortic arch in TAC analysis on cardiovascular risk prediction.
- To determine if standard TAC evaluations miss a significant patient population.
Main Methods:
- Utilized extended non-contrast cardiac CT scans encompassing the aortic arch for 970 patients.
- Developed an automated algorithm to extract vessel centerlines and measure diameters.
- Quantified calcifications using the Agatston score and mapped them to specific thoracic aorta segments.
Main Results:
- The aortic arch and proximal descending aorta, typically excluded, harbored 60% of detected calcifications.
- Extended TAC analysis doubled prevalence from 31% to 64%, with 52% of patients initially undetected.
- An additional 111 subjects, including a higher proportion of women, were identified exclusively through the enlarged scan.
Conclusions:
- The aortic arch and proximal descending aorta are critical, yet often overlooked, sites for TAC accumulation.
- Standard TAC assessments underestimate disease prevalence, potentially missing at-risk individuals.
- Middle-aged women are particularly susceptible to calcifications in these hidden thoracic aorta segments, necessitating reclassification.
Background:
The presence of calcified atherosclerosis in different vascular beds has been associated with a higher risk of mortality. Thoracic aorta calcium (TAC) can be assessed from computed tomography (CT) scans, originally aimed at coronary artery calcium (CAC) assessment. CAC screening improves cardiovascular risk prediction, beyond standard risk assessment, whereas TAC performance remains controversial. However, the curvilinear portion of the thoracic aorta (TA), that includes the aortic arch, is systematically excluded from TAC analysis. We investigated the prevalence and spatial distribution of TAC all along the TA, to see how those segments that remain invisible in standard TA evaluation were affected.
Methods And Results:
A total of 970 patients (77% men) underwent extended non-contrast cardiac CT scans including the aortic arch. An automated algorithm was designed to extract the vessel centerline and to estimate the vessel diameter in perpendicular planes. Then, calcifications were quantified using the Agatston score and associated with the corresponding thoracic aorta segment. The aortic arch and the proximal descending aorta, "invisible" in routine CAC screening, appeared as two vulnerable sites concentrating 60% of almost 11000 calcifications. The aortic arch was the most affected segment per cm length. Using the extended measurement method, TAC prevalence doubled from 31% to 64%, meaning that 52% of patients would escape detection with a standard scan. In a stratified analysis for CAC and/or TAC assessment, 111 subjects (46% women) were exclusively identified with the enlarged scan.
Conclusions:
Calcium screening in the TA revealed that the aortic arch and the proximal descending aorta, hidden in standard TA evaluations, concentrated most of the calcifications. Middle-aged women were more prone to have calcifications in those hidden portions and became candidates for reclassification.
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